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Towards an Alternative to Time of Flight Diffraction Using Instantaneous Phase Coherence Imaging for Characterization of Crack-Like Defects

机译:使用瞬时相干成像朝向飞行时间衍射的替代以表征裂纹状缺陷

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摘要

Time of flight diffraction (TOFD) is considered a reliable non-destructive testing method for the inspection of welds using a pair of single-element probes. On the other hand, ultrasonic phased array imaging has been continuously developed over the last couple of decades, and now features powerful algorithms, such as the total focusing method (TFM) and its multi-view approach to rendering detailed images of inspected parts. This article focuses on a different implementation of the TFM algorithm, relying on the coherent summation of the instantaneous signal phase. This approach presents a wide range of benefits, such as removing the need for calibration, and is highly sensitive to defect tips. This study compares the sizing and localization capabilities of the proposed method with the well-known TOFD. Both instantaneous phase algorithm and TOFD do not take advantage of the signal amplitude. Experimental tests were performed on a ¾″-thick steel sample with crack-like defects at different angles. Phase-based imaging techniques showed similar characterization capabilities as the standard TOFD method. However, the proposed method adds the benefit of generating an easy-to-interpret image that can help in localizing the defect. These results pave the way for a new characterization approach, especially in the field of automated ultrasonic testing (AUT).
机译:飞行时间衍射(TOFD)被认为是一种可靠的非破坏性测试方法,用于使用一对单元素探针检查焊缝。另一方面,超声波相位阵列成像在过去几十年中被连续开发,现在具有强大的算法,例如渲染检查部件的详细图像的总关注方法(TFM)和其多视图方法。本文侧重于TFM算法的不同实现,依赖于瞬时信号阶段的相干求和。这种方法呈现了广泛的益处,例如去除校准的需要,对缺陷提示非常敏感。本研究比较了所提出的方法与众所周知的TOFD的尺寸和定位能力。瞬时阶段算法和TOFD都不利用信号幅度。用不同角度的裂纹状缺陷在¾“钢样品上进行实验试验。基于相位的成像技术显示出与标准TOFD方法相似的表征能力。然而,所提出的方法增加了生成易于解释图像的益处,可以有助于本地化缺陷。这些结果为新的表征方法铺平了道路,特别是在自动超声波检测领域(AUT)。

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